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constraints of production, time, and cost. It can be used to determine the number of standard bags and the number of deluxe bags to produce
constraints of production, time, and cost. It can be used to determine the number of standard bags and the number of deluxe bags to produce in order to maximize total profit contribution. Let S= number of standard bags Let D= number of deluxe bags Maxs.t.101S+41D135S,D010S+9D107S+1D63021S+65D6001S+32D708InspectionandPackagingCuttingandDyeingSewingFinishing solution and the total profit contribution for each situation described? (a) The accounting department revises its estimate of the profit contribution for the deluxe bag to $18 per bag. Theoptimalsolutionoccursat(S,D)=(()withaprofitof$. The optimal solution occurs at (S,D)=( with a profit of \$ The optimal solution occurs at (S,D)=( with a profit of $ constraints of production, time, and cost. It can be used to determine the number of standard bags and the number of deluxe bags to produce in order to maximize total profit contribution. Let S= number of standard bags Let D= number of deluxe bags Maxs.t.101S+41D135S,D010S+9D107S+1D63021S+65D6001S+32D708InspectionandPackagingCuttingandDyeingSewingFinishing solution and the total profit contribution for each situation described? (a) The accounting department revises its estimate of the profit contribution for the deluxe bag to $18 per bag. Theoptimalsolutionoccursat(S,D)=(()withaprofitof$. The optimal solution occurs at (S,D)=( with a profit of \$ The optimal solution occurs at (S,D)=( with a profit of $
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